首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >A Drosophila homolog of the tumor suppressor gene adenomatous polyposis coli down-regulates β-catenin but its zygotic expression is not essential for the regulation of Armadillo
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A Drosophila homolog of the tumor suppressor gene adenomatous polyposis coli down-regulates β-catenin but its zygotic expression is not essential for the regulation of Armadillo

机译:果蝇抑癌基因的同源物。 腺瘤性息肉病大肠杆菌下调β-catenin但其合子 表达对于Armadillo的调节不是必需的

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摘要

Mutations in the adenomatous polyposis coli gene (which encodes a protein called APC) are associated with the formation of intestinal polyps and colon cancers. To facilitate the functional study of APC we have isolated its Drosophila homolog (D-APC) by screening an expression library with an antibody against human APC. The isolated cDNA encodes a predicted 2416-amino acid protein containing significant homology to multiple domains of mammalian APCs. D-APC has seven complete armadillo repeats with 60% identity to its human homolog, one β-catenin binding site, and up to 7 copies of a 20-amino acid repeat with the average of 50% identity to human APC at amino acid level. D-APC, like its human counterpart, also contains a basic domain. Expression of the domain of D-APC homologous to the region required for β-catenin down-regulation resulted in down-regulation of intracellular β-catenin in a mammalian cell line. This same region bound to the Armadillo (Arm) protein, in vitro, the Drosophila homolog of β-catenin. D-APC RNA and protein expression is very low, if detectable at all, during stages when Arm protein accumulates in a striped pattern in the epidermis of the Drosophila embryos. Removing zygotic D-APC expression did not alter Arm protein distribution, and the final cuticle pattern was not affected significantly. As observed in the rodent, high levels of D-APC expression have been detected in the central nervous system, suggesting a role for D-APC in central nervous system formation.
机译:腺瘤性息肉病大肠杆菌基因(编码一种称为APC的蛋白质)中的突变与肠息肉和结肠癌的形成有关。为促进APC的功能研究,我们通过用抗人APC的抗体筛选表达文库来分离其果蝇同源物(D-APC)。分离的cDNA编码预测的2416氨基酸蛋白,该蛋白与哺乳动物APC的多个结构域具有显着的同源性。 D-APC具有7个完整的犰狳重复序列,与其人类同源物具有60%的同一性,一个β-catenin结合位点,以及多达7个20个氨基酸的重复序列,在氨基酸水平上与人APC的平均50%相同。 D-APC与其人类对应物一样,也包含一个基本域。与β-连环蛋白下调所需的区域同源的D-APC结构域的表达导致哺乳动物细胞系中细胞内β-连环蛋白的下调。在体外,该相同区域与Armadillo(Arm)蛋白结合,形成了β-catenin的果蝇同源物。在Arm的各个阶段,D-APC RNA和蛋白质表达非常低,即使根本无法检测到 蛋白质以条纹状积累在表皮中 果蝇胚胎。去除合子D-APC表达 并没有改变Arm蛋白的分布,最终的表皮样式 没有受到明显的影响。正如在啮齿动物中观察到的那样,高水平 在中枢神经系统中检测到D-APC表达的变化 提示D-APC在中枢神经系统形成中的作用。

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